biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 4291 to 4320 of 6171:

Specification of the effect of chelating complex of iron ions in androgenesisin vitro by means of cation-free minimal medium

J. Vagera, M. Jílek

Biologia plantarum 26:121, 1984 | DOI: 10.1007/BF02902276

The addition of Na2EDTA to a minimal medium (agar, sucrose) deprived of cations produces no morphoregulatory effect. This effect is induced only by the addition of iron. Traces of iron present in the agar are sufficient for the development of globular embryoid into a complete plant. The traces of iron in distilled water and sucrose (p. a.) are insufficient for the morphoregulation. The marked difference between the necessary limiting amount of chelate and necessary limiting amount of iron in non-modified media is explained by the presence of other cations, which saturate and thereby inactivate a greater part of Na2EDTA. It is recommended to decrease the amount of iron and leave the commonly used amount of chelate in the prepared media. Simultaneously with optimal morphoregulatory effect in androgenesis and somatic embryogenesis, vitality of tissue culture will be lengthened and ageing as well as necrosis of the cultures be decreased.

The study of morphological and histological changes in tissue cultures ofmatricaria inodora L

Margita Rychlová, Eva Čellárová, R. Hončariv

Biologia plantarum 26:197, 1984 | DOI: 10.1007/BF02895049

This paper deals with some morphological and histological changes observed during regular intervals inMatricaria inodora L. tissue cultures derived from leaf expiants. The expiants were cultivated on Murashige-Skoog's culture medium supplemented with 1.0 mg 1-1 2,4-dichlorophenoxyacetic acid. The callus formation started about a week after isolation. During the second week the meristematic centers were differentiated from which root and shoot apices were later formed. During long term cultivation under the same culture conditions the inhibition of development of shoot apices took place. Only roots of unorganized growth have been regenerated. The influence of culture conditions on morphogenetic potential is discussed.

Effect of water stress at different developmental stages of field-grown rice

Ajoy K. Biswas, M. A. Choudhuri

Biologia plantarum 26:263-266, 1984 | DOI: 10.1007/BF02902907

Water-stress for 10d at different developmental stages, affected relative water content and leaf water potential of plants. Subsequent rewatering removed these effects. Water stress lowered the contents of chlorophyll, protein, RNA and the activity of catalase, while it increased free proline accumulation and activities of protease, RNase and peroxidase. An overall improvement in biochemical parameters was achieved as soon as the stress was withdrawn by watering and this was reflected in subsequent developmental stages. Water-stress at the reproductive stages induced similar changes as in the vegetative stage but the removal of stress could not improve these parameters to the same extent as at the vegetative stage. In consequence, stress applied at the vegetative stage augmented yield parameters but when applied at the reproductive stage it significantly reduced the yield.

Book review

Věra Hadačová

Biologia plantarum 26:357, 1984 | DOI: 10.1007/BF02898572

Dark transpiration rate and water deficit as growth limiting factors in alfalfa plants

F. Plhák

Biologia plantarum 26:441, 1984 | DOI: 10.1007/BF02909594

Growth, dark transpiration rate (DTR) as well as water saturation deficit (WSD) of 30 single plants of 8 alfalfa genotypes growing in experimental field of 50 × 10 cm spacing, in four cuts at early bud stage, were studied. The growth and WSD of genotypes examined were significantly different, the differences in DTR were not significant. The growth of alfalfa plants was in negative correlation with both DTR which reflects non-effective water loss and WSD. Significant negative correlation established between plant growth and its variability shows that fodder productivity in alfalfa genotypes was dependent on growth variability of individual plants. Positive correlations established between WSD or DTR and the growth variability show some of the causes of growth variability.

Induction of free radicals in seeds by high intensive flashes and the relevant phosphorus metabolism in the seedling

A. K. Srivastava, A. G. Chetverikov, S. A. Stanko, G. V. Novikova

Biologia plantarum 26:88-98, 1984 | DOI: 10.1007/BF02902271

Influence of high intensive flashes on the yield of free radicals in intact seeds and excised embryonic axis, endosperm, and seed coat, and its resulting effect on seedling growth, total biomass production and phosphorus metabolism in wheat (Triticum aeativum), vetch (Vicia sativa L.) and onion (Allium cepa L.) was studied. Free radicals (f.r.) were formed mainly in seed coat and not in the endosperm. Vetch seeds after irradiation had 20.76 X 1013 f.r. g-1 dry intact seed and 17.30 X 1013 f.r. g-1 dry seed coat. Excised seed coats exposed to irradiation also yielded 17.28 × 1013 f.r. g-1 dry matter. High irradiance "white light" flashes induced more f.r. than a monochromatic one of the same photon content. Red (650 nm), farred (750 nm) and even infra-red (1100 nm) radiation did not initiated f.r. formation but resulted in their decay in samples irradiated earlier by "white", blue and green parts of the spectrum. Blue irradiation of seeds led to the decrease in the length of shoots and roots in comparison to "white", green and red irradiation but their biomass increased faster than in the seedlings obtained from non-irradiated or irradiated with "white" and green radiation. The quantity of total acid soluble phosphorus followed a sequence with respect to wavelength of radiation: 436 nm > 650 nm> > 540 nm > non-irradiated > 300-800 nm. Quantity of inorganic phosphorus remained unaffected by different spectral character of radiation. The quantity of organic acid soluble nucleic phosphorus and acid insoluble polyphosphates was higher in samples irradiated with red beams (650 ± 6 nm).

Levels of deoxyribonucleic acid and of deoxyribonucleolytic activity in ragi leaves during senescence

K. B. Kumar, P. A. Khan

Biologia plantarum 26:174, 1984 | DOI: 10.1007/BF02895044

There was a slow and gradual rise in the deoxyribonucleolytic activity of both excised and attached first leaf of ragi (Eleusine coracana Gaertn. cv. PR 202) during senescence. The decline in DNA content is correlated with the rise in deoxyribonucleolytic activity; but both DNA and deoxyribonucleolytic enzyme were photo-insensitive and did not respond to the application of senescence retardants - benzimidazole and gibberellic acid. Increase in deoxyribonucleolytic activity in excised leaves was not affected by actinomycin D; it was, however, wholly or partially prevented by cycloheximide. The effect of the translation inhibitor depended on the time of application. The enzyme activity seems to have no specific relation with the process of senescence.

Gluzman, Y., Shenk, T. (ed.)Enhancers and Eukaryotic Gene Expression.

J. Tupý

Biologia plantarum 26:245, 1984 | DOI: 10.1007/BF02902902

Biochemical studies of the regeneration of the root cuttings ofClerodendrum viscosum Vent

T. K. Prasad, P. M. Mehta, Y. S. Dave

Biologia plantarum 26:321, 1984 | DOI: 10.1007/BF02898566

The contents of reducing sugars, proteins and ascorbic acid and the activities of protease, peroxidase, catalase, indole acetic acid oxidase, ascorbic acid oxidase, succinic dehydrogenase and the rate of respiration were investigated in regenerating and non-regenerating parts ofClerodendrum viscosum Vent. root cuttings. All the above variables have registered higher in the regenerating parts, particularly at the distal end where roots appear, than in the non-regenerating parts of root cuttings. The contents of metabolites and the activities of enzymes in the presence of endogenous cytokinins at the proximal end and auxins at the distal end, were compared and discussed in relation to the initiation of shoots and roots at two ends of root cuttings. In general it was concluded that interacting hormonal and nutritional factors must be appropriate to initiate shoots or roots in the root cuttings.

Carotenoids fromCapsicum annuum fruits: Changes during ripening and storage

M. E. Candela, M. Lopez, F. Sabater

Biologia plantarum 26:410, 1984 | DOI: 10.1007/BF02909589

Contents of individual carotenoids in the fruits of Ramillete cultivar ofCapsicum annuum L. changed during ripening of recently harvested fruits or fruits stored 15 d in a dark and cool room. β-carotene and β-cryptoxanthin contents rose to a maximum and then declined, while the contents of other earotenoids rose to a rather steady level. Capsanthin was the main carotenoid which together with capsorubin were responsihle for the ripening colour.

Ontogenetic changes in response of adaxial and abaxial epidermal conductances to water stress

Jana Pospísilova, Jarmila Solárová

Biologia plantarum 26:49, 1984 | DOI: 10.1007/BF02880426

The sensitivity of stomata to water stress increased during ontogeny of primary bean leaves growing under constant environmental conditions: the decrease in both adaxial and abaxial epidermal conductances was induced by slightly more negative values of leaf water potential in young than in mature and especially old leaves. However, these differences were less expressive than the differences mentioned in the literature for leaves of different insertion level, where adaptations to microclimatic conditions in different canopy layers in addition to ontogeny may occur.

In memoriam of Professor Kurt Mothes

Milan KutáCek, Miloslav Sosna

Biologia plantarum 26:159, 1984 | DOI: 10.1007/BF02902284

High altitude acclimatization in fourArtemisia species: Changes in free amino acids and nitrogen contents in leaves

S. Nautiyal

Biologia plantarum 26:230, 1984 | DOI: 10.1007/BF02895055

During high altitude acclimatization the highest number of amino acids were found in temperateArtemisia species (A. vestita) and the lowest one in tropical species (A. scoparia). The amount of free amino acids in temperateArtemisia species was higher when this was grown at 3600 m altitude. InA. scoparia, A. vulnaris andA. parviflora, the higher amount of individual amino acids was ascertained in plants grown at lower altitudes.
InA. vestita, the nitrogen contents per unit dry matter was lower in plants grown at high altitude. In the other three species, the contents were significantly higher in the leaves of plants grown at a higher altitude. The nitrogen contents per unit leaf dry matter determined during active growth of plants were minimum inA. parviflora and maximum inA. vestita. With progressing plant senescence the concentration of nitrogen decreased in all species studied.

Effects of chemical and physico-chemical factors on sugar-beet invertase activity

Milena Bohuslavská, J. Zahradníček, Dana Michaljaničová, A. Kotyk

Biologia plantarum 26:303, 1984 | DOI: 10.1007/BF02902914

Sugar-beet invertase preparation was found to be highly temperature-dependent in its activity (Topt = 40 °C), to be decreased by bivalent metal salts (especially CaCl2 and MgCl2 and relatively unaffected by heavy metal cations from the end of the periodic table. Inhibitors of SH groups, such as iodoacetamide andp-chloromercuribenzoate, were highly inhibitory while ouabain was a medium-strength inhibitor, with 2,4-dinitrophenol having no effect. The intracellular pH of 7.3, corresponding to the optimum for invertase (at 7.2) could be substantially decreased (to 5.8) by exposure of cells of whole sugar-beet roots to carbon dioxide in aqueous solution.

Effect of glycinebetaine on water use efficiency of wheat (Triticum aestivum L.)

H. Bergmann, H. Eckert

Biologia plantarum 26:384, 1984 | DOI: 10.1007/BF02898579

Long-term effects of glycinebetaine on water use efficiency (WUE), dry matter production and net photosynthetic rate have been studied. Applied glycinebetaine enhanced the WUE and the grain yield of wheat.

Maintenance and growth components of dark respiration rate in leaves of C3 and C4 plants as affected by leaf temperature

M. Kaše, J. Čatský

Biologia plantarum 26:461-470, 1984 | DOI: 10.1007/BF02909600

The rates of maintenance and growth components of leaf dark respiration of a C3 plant (Phaseolus vulgaris L.) and C4 plant (Zea mays L.) as affected by temperature were studied using the McCree concept. Respiration rates were measured by means of infrared gas analysis in a closed gas exchange system. In both C3 and C4 species RD and Rm increased with temperature in the temperature range (15-62 °C) studied. RG depended on temperature with an optimum near the temperature optimum of gross photosynthetic rate, Pg. Significant correlation between RD and RM and between RG and PG was found.

Book review

T. Gichner

Biologia plantarum 26:21, 1984 | DOI: 10.1007/BF02880420

Book reviews

Ingrid Tichá

Biologia plantarum 26:127, 1984 | DOI: 10.1007/BF02902277

Growth of free-cell suspension and plantlet regeneration in the legumeIndigofera enneaphylla Linn

Shashi Bharal, A. Rashid

Biologia plantarum 26:202-205, 1984 | DOI: 10.1007/BF02895050

Regeneration of complete plants is possible from free-cell derived colonies ofIndigofera enneaphylla. In addition to factors such as plating density and composition of the nutrient medium, carbon dioxide is essential for the growth of free-cells whereas changing the light intensity had no effect. Cell colonies were obtained at a plating density of 2.5 × 103 cells/ml on medium containing benzylaminopurine, 2,4-dichlorophenoxyacetic acid and casein hydrolysate and plantlets were obtained on medium containing only BAP.

Senescence of rice leaves at the vegetative stage as affected by growth substances

S. Ray, M. A. Choudhuri

Biologia plantarum 26:267, 1984 | DOI: 10.1007/BF02902908

In rice (Oryza saliva L. ev. Java), the first (younger) leaf senesced later than the second (older) leaf as shown by the decline in chlorophyll and protein contents. Kinetin treatment significantly retarded senescence of leaves, while abscisic acid (ABA) treatment promoted it. The second leaf exported more32P to the newly emerged growing leaf at the early stages than the first leaf, which always showed higher retention of32P than the second one. Kinetin treatment lengthened the duration of32P export and also increased the retention capacity of both leaves, while ABA had the opposite effect. The second leaf showed a higher depletion of nitrogen and phosphorus but à lower depletion of potassium than the first leaf. Kinetin treatment retarded the decline in nutrient content (N and P) while ABA treatment hastened it. Neither growth substance had any effect on potassium content. The content(s) of endogenous eytokinin-like substance(s) decreased while ABA-like substance(s) increased in the two leaves with senescence: these changes in the second leaf took place earlier than in the first leaf.

Transport and regulative properties of phenylacetic acid

S. ProchÁzka, V. Borkovec

Biologia plantarum 26:358-363, 1984 | DOI: 10.1007/BF02898573

The mode of transport and regulative properties of phenylacetic acid (PAA) were studied in 11-cm long segments of pea epicotyls capable of growth. The transport of PAA m both the basipetal and aeropetal direction was limited to tissues situated immediately below and/or above the site of its application. PAA was able to promote the flow of14C-ABA in the acropetal direction. PAA-initiated thickening growth was probably the cause of this promotion.

Fortschritte der Botanik. Morphologie. Physiologie. Genetik. Systematik. Geobotanik

Ingrid Tichá

Biologia plantarum 26:447, 1984 | DOI: 10.1007/BF02909595

Diurnal variation in leaf water potential, stomatal conductance, and irradiance of winter crop under different moisture levels

Pubshotam Rao, S. K. Agaewal

Biologia plantarum 26:1-4, 1984 | DOI: 10.1007/BF02880415

Mustard (Brassica juncea) Coss., chickpea (Cicer arietinum L. and barley (Hordeum vulgare) L. were grown under different moisture levels. Diurnal changes in leaf water potential showed lower values and higher fluctuation in mustard, chickpea and barley grown with no irrigation as compared to one supplemental irrigation. Diurnal maximum of adaxial stomatal conductance in mustard and barley was higher under one irrigation treatment. In mustard stomatal conductance of abaxial surface of leaf remained higher than adaxial surface of leaf throughout the day, whereas the reverse was true in barley. Also the leaf and soil temperature and reflectance were slightly higher in all the three crops under no irrigation.

Detection and evaluation of serine proteinase by affinity chromatography on immobilized-aprotinin inRicinus communia

Tsuneo Watanabe, Noriaki Kondo, Kazutaka Kano

Biologia plantarum 26:99, 1984 | DOI: 10.1007/BF02902272

Neutral proteinase was found in the leaves ofRicinus communie as assayed with α-casein and H-D-Val-Leu-Lys-pNA as substrates. The enzyme is maximally active at pH around 7.4. A selective adsorbent for serine proteinase was prepared by attaching aprotinin to aminoalkyl-porous glass.
When partially purified leaf proteinase was passed through a column containing this adsorbent, the proteinase activity present was bound to the porous glass. The proteinase eluted at IM NaCl was inhibited by aprotinin, leupeptin, DFP, phenylmethylsulfonyl fluoride (PMSF) and serine proteinase inhibitor fromR, communis leaves, whereas pepstatin, EDTA, EGTA, and DTT had no effect on the enzyme. This inhibition profile suggests the leaf proteinase is a neutral proteinase, such as a serine proteinase.

Hassall, K. A.: The Chemistry of Pesticides. Their Metabolism, Mode of Action and Uses in Crop Protection

J. Velemínský

Biologia plantarum 26:180, 1984 | DOI: 10.1007/BF02895045

Effect of water stress on leaf and root growth, and water uptake ofGmelina arborea ROXB. seedlings

O. Osonubi

Biologia plantarum 26:246-252, 1984 | DOI: 10.1007/BF02902903

Young seedlings ofGmelina arborea Roxb. were subjected to 2 weeks of drought. Despite the gradual reduction in stomatal conductance, leaf and root growth was not affected until the later part of the stress period. This was attributed to solute adjustment in the roots of the plants. As the severity of water stress increased, root growth was prolific in all the soil segments. As a result, water in the lowest soil segment was used to maintain plant turgor, which in turn sustains the leaf and root growth during the water-stress treatment. The influence of soil water content and soil water potential upon soil water uptake rate was also evaluated on soil profile basis. Rates of extraction began to decline in all soil segments as soon as soil water potential fell below -0.06 MPa, presumably as a result of vapour gaps between the root and soil (root: soil interface resistance). It is suggested that the growth of roots ofGmelina plants away from drying soil will minimize the resistance to water uptake.

Effects of oxygenation of castor bean cotyledons on proton and sucrose influx

Françoise de Bock

Biologia plantarum 26:327, 1984 | DOI: 10.1007/BF02898567

Some of the effects of oxygen concentration in the external medium bathing castor bean cotyledons were investigated.
At 700 μM O2, the sucrose-dependent proton influx was dependent on external pH while sucrose influx was independent of pH between 4,5 and 6; proton influx and sucrose influx were both dependent on external sucrose concentration; both were saturated above 50 mM sucrose. The stoichiometry H+/S decreased with increasing pH and sucrose concentration. These data were consistent with the results obtained in stirred or aerated external medium.
Oxygen consumption, acidification of the medium, sucrose-dependent proton influx and sucrose uptake increased with increasing oxygen concentration up to 700 μM where saturation was reached. Bubbling with air (O2, 160 μM) resulted in the same increase despite lower oxygen concentration. It is suggested that not only O2 concentration but also CO2 concentration act on O2 consumption, and proton and sucrose fluxes.

The effect of phenolic compounds on the activity of respiratory chain enzymes and on respiration and phosphorylation activities of potato tuber mitochondria

P. Makovec, L. Šindelář

Biologia plantarum 26:415, 1984 | DOI: 10.1007/BF02909590

The effect of derivatives of benzoic and cinnamic acids, quereetin,p-benzoquinone, and 2,5-dimethylbenzoquinone on oxygen consumption mitoehondrial suspensions and on the activity of some respiratory chain enzymes was studied. Benzoquinone and 2,5-dimethylbenzoquinone highly significantly inhibited the respiration and phosphorylation rates and malate- and succinate dehydrogenase activities. Chlorogenic acid, similarly as the quinones, very significantly inhibited the activities of the studied dehydrogenases but did not affect cytochrome oxidase. Oxygen consumption by intact mitochondria was not inhibited, only the oxidativo phosphorylation was significantly uncoupled. Quereetin significantly enhanced dehydrogenase activities and completely inhibited cytochrome oxidase activity. The respiration and phosphorylation activities of the mitochondria were significantly inhibited by quereetin. The effect of the other phenolic compounds studied on respiration and phosphorylation activities was not significant. Succinate dehydrogenase activity was the most affected enzyme among the respiratory chain enzymes. It was significantly inhibited by all the above phenolic compounds at 1-4M or 5 10-5M concentrations with the exception of gallic acid.

Book review

J. Velemínský

Biologia plantarum 26:55, 1984 | DOI: 10.1007/BF02880427

The effect of some micronutrients and heavy metals on phosphate absorption by maize root cortex segments

Ivana Macháčková, Z. Zmrhal

Biologia plantarum 26:161, 1984 | DOI: 10.1007/BF02895040

The effect of salts (nitrates, chlorides, and sulfates) of microelements, Cd2+, Ni2+, and Co2+ and the effect of boric acid and ammonium molybdate on phosphate uptake by maize root cortex segments were tested.
Higher concentration (0.1 mM) of Cu2+ salts caused enhancement of phosphate efflux to the extent that efflux was higher than influx.
Inhibitory action on phosphate uptake by maize root cortex segments was exerted by following salts: 0.01 mM Cu2+ salts (20-30% inhibition), 0.5 mM ZnSO4 (9.7%), 0.5 and 0.05 mM ZnCl2 (34.3% and 20.8%), 0.1 mM salts of Cd2+, Ni2+, Co2+ (35-78%).
1 mM FeSO4 had significant stimulatory effect (92%) on phosphate uptake. Much weaker stimulatory effect was exerted by 1 mM FeCl3 (14%), 0.05 mM ZnSO4 (9.6%), 0.005 mM ZnCla and ZnSO4 (8.4 and 18.5%) and 0.001 mM CdCl2 and CdSO4 (20.8 and 12.4%).
All other tested salts-salts of Mn2+ (0.1 and 0.01 mM), 0.01 and 0.001 mM salts of Co2+ and Ni2+, 0.001 mM salts of Cu2+, 0.001-10 mM boric acid, and 0.001-0.1 mM ammonium molybdate left phosphate uptake unaffected.

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